Artículos de revistas
ESR, electrochemical and cyclodextrin-inclusion studies of triazolopyridyl pyridyl ketones and dipyridyl ketones derivatives
Fecha
2008-11Registro en:
Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, Volume 71, Issue 2, 2008, Pages 703-709
1386-1425
Autor
Olea Azar, Claudio
Chadlaoui, M.
Abarca, B.
Norambuena, Ester
Opazo, L.
Jullian Matthaei, Carolina
Valencia, S.
Ballesteros, R.
Institución
Resumen
The electron spin resonance (ESR) spectra of free radicals obtained by electrolytic reduction of triazolopyridyl pyridyl ketones and dipyridyl
ketones derivatives were measured in dimethylsulfoxide (DMSO). The hyperfine patterns indicate that the spin density delocalization is dependent
of the rings presented in the molecule. The electrochemistry of these compounds was characterized using cyclic voltammetry, in DMSO as solvent.
When one carbonyl is present in the molecule one step in the reduction mechanism was observed while two carbonyl are present two steps were
detected. The first wave was assigned to the generation of the correspondent free radical species, and the second wave was assigned to the dianion
derivatives. The phase–solubility measurements indicated an interaction between molecules selected and cyclodextrins in water. These inclusion
complexes are 1:1 with CD, and HP- CD. The values of Ks showed a different kind of complexes depending on which rings are included. AM1
and DFT calculations were performed to obtain the optimized geometries, theoretical hyperfine constants, and spin distributions, respectively. The
theoretical results are in complete agreement with the experimental ones.